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AHA——一种2类解偶联剂的异二聚体:五氯苯酚。

AHA- heterodimer of a class-2 uncoupler: pentachlorophenol.

作者信息

Barstad A W, Peyton D H, Smejtek P

机构信息

Physics Department, Portland State University, OR 97207-0751.

出版信息

Biochim Biophys Acta. 1993 Jan 8;1140(3):262-70. doi: 10.1016/0005-2728(93)90065-n.

Abstract

AHA- heterodimers formed by association of neutral molecules of weak acid (HA) with its conjugate anion (A-) have been proposed to be the charged membrane-permeable species of class-2 uncouplers. Past attempts to extract and identify AHA- heterodimers failed. We have measured optical spectra of HA+A- (1:1) solutions of pentachlorophenol (PCP) in various solvents and in the presence of PC liposomes. Optical studies were supplemented by nuclear magnetic resonance measurements of HA+A- (1:1) solutions of PCP in dichloroethane to gain insight into the formation of AHA- species in lipid membranes. From these experiments, we found evidence for AHA- formation in non-hydrogen-bonding solvents, then reported the AHA- formation constant Kf and the molar absorptivity epsilon AHA-(lambda). Kf decreases with increasing dielectric constant, kappa, from 1210 +/- 130 M-1 for dichloroethane (kappa 10.7), to 340 +/- 34 M-1 for acetonitrile (kappa 37.5); Kf also decreases with increasing concentration of water. In hydrogen-bonding solvents, octanol (kappa 10.3) and methanol (kappa 33.5) and in liposomes, AHA- heterodimers are not observed optically. We estimate Kf for PCP in lipid bilayers from a combination of data on membrane electrical conductivity and surface density of adsorbed PCP. Our estimate for lipid bilayer, 0.005 < Kf < 0.5 M-1, is consistent with our inability to detect the AHA- species optically in liposome suspensions. We propose that penetration of water into the membrane inhibits formation of AHA- in lipid bilayers.

摘要

有人提出,弱酸(HA)的中性分子与其共轭阴离子(A-)缔合形成的AHA-异二聚体是2类解偶联剂的带电膜可渗透物种。过去提取和鉴定AHA-异二聚体的尝试均告失败。我们测量了五氯苯酚(PCP)的HA+A-(1:1)溶液在各种溶剂中以及存在PC脂质体时的光谱。通过对PCP在二氯乙烷中的HA+A-(1:1)溶液进行核磁共振测量来补充光学研究,以深入了解脂质膜中AHA-物种的形成。从这些实验中,我们发现了在非氢键溶剂中形成AHA-的证据,然后报告了AHA-的形成常数Kf和摩尔吸光系数εAHA-(λ)。Kf随着介电常数κ的增加而降低,从二氯乙烷(κ = 10.7)的1210±130 M-1降至乙腈(κ = 37.5)的340±34 M-1;Kf也随着水浓度的增加而降低。在氢键溶剂(正辛醇(κ = 10.3)和甲醇(κ = 33.5))以及脂质体中,未通过光学方法观察到AHA-异二聚体。我们结合膜电导率和吸附PCP的表面密度数据估算了脂质双层中PCP的Kf。我们对脂质双层的估算值0.005 < Kf < 0.5 M-1与我们无法在脂质体悬浮液中通过光学方法检测到AHA-物种的结果一致。我们提出,水渗透到膜中会抑制脂质双层中AHA-的形成。

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